2 * INET An implementation of the TCP/IP protocol suite for the LINUX
3 * operating system. INET is implemented using the BSD Socket
4 * interface as the means of communication with the user level.
6 * ROUTE - implementation of the IP router.
9 * Fred N. van Kempen, <waltje@uWalt.NL.Mugnet.ORG>
10 * Alan Cox, <gw4pts@gw4pts.ampr.org>
11 * Linus Torvalds, <Linus.Torvalds@helsinki.fi>
12 * Alexey Kuznetsov, <kuznet@ms2.inr.ac.ru>
15 * Alan Cox : Verify area fixes.
16 * Alan Cox : cli() protects routing changes
17 * Rui Oliveira : ICMP routing table updates
18 * (rco@di.uminho.pt) Routing table insertion and update
19 * Linus Torvalds : Rewrote bits to be sensible
20 * Alan Cox : Added BSD route gw semantics
21 * Alan Cox : Super /proc >4K
22 * Alan Cox : MTU in route table
23 * Alan Cox : MSS actually. Also added the window
25 * Sam Lantinga : Fixed route matching in rt_del()
26 * Alan Cox : Routing cache support.
27 * Alan Cox : Removed compatibility cruft.
28 * Alan Cox : RTF_REJECT support.
29 * Alan Cox : TCP irtt support.
30 * Jonathan Naylor : Added Metric support.
31 * Miquel van Smoorenburg : BSD API fixes.
32 * Miquel van Smoorenburg : Metrics.
33 * Alan Cox : Use __u32 properly
34 * Alan Cox : Aligned routing errors more closely with BSD
35 * our system is still very different.
36 * Alan Cox : Faster /proc handling
37 * Alexey Kuznetsov : Massive rework to support tree based routing,
38 * routing caches and better behaviour.
40 * Olaf Erb : irtt wasn't being copied right.
41 * Bjorn Ekwall : Kerneld route support.
42 * Alan Cox : Multicast fixed (I hope)
43 * Pavel Krauz : Limited broadcast fixed
44 * Mike McLagan : Routing by source
45 * Alexey Kuznetsov : End of old history. Split to fib.c and
46 * route.c and rewritten from scratch.
47 * Andi Kleen : Load-limit warning messages.
48 * Vitaly E. Lavrov : Transparent proxy revived after year coma.
49 * Vitaly E. Lavrov : Race condition in ip_route_input_slow.
50 * Tobias Ringstrom : Uninitialized res.type in ip_route_output_slow.
51 * Vladimir V. Ivanov : IP rule info (flowid) is really useful.
52 * Marc Boucher : routing by fwmark
53 * Robert Olsson : Added rt_cache statistics
54 * Arnaldo C. Melo : Convert proc stuff to seq_file
55 * Eric Dumazet : hashed spinlocks and rt_check_expire() fixes.
56 * Ilia Sotnikov : Ignore TOS on PMTUD and Redirect
57 * Ilia Sotnikov : Removed TOS from hash calculations
59 * This program is free software; you can redistribute it and/or
60 * modify it under the terms of the GNU General Public License
61 * as published by the Free Software Foundation; either version
62 * 2 of the License, or (at your option) any later version.
65 #define pr_fmt(fmt) "IPv4: " fmt
67 #include <linux/module.h>
68 #include <asm/uaccess.h>
69 #include <linux/bitops.h>
70 #include <linux/types.h>
71 #include <linux/kernel.h>
73 #include <linux/string.h>
74 #include <linux/socket.h>
75 #include <linux/sockios.h>
76 #include <linux/errno.h>
78 #include <linux/inet.h>
79 #include <linux/netdevice.h>
80 #include <linux/proc_fs.h>
81 #include <linux/init.h>
82 #include <linux/skbuff.h>
83 #include <linux/inetdevice.h>
84 #include <linux/igmp.h>
85 #include <linux/pkt_sched.h>
86 #include <linux/mroute.h>
87 #include <linux/netfilter_ipv4.h>
88 #include <linux/random.h>
89 #include <linux/rcupdate.h>
90 #include <linux/times.h>
91 #include <linux/slab.h>
92 #include <linux/jhash.h>
94 #include <net/dst_metadata.h>
95 #include <net/net_namespace.h>
96 #include <net/protocol.h>
98 #include <net/route.h>
99 #include <net/inetpeer.h>
100 #include <net/sock.h>
101 #include <net/ip_fib.h>
104 #include <net/icmp.h>
105 #include <net/xfrm.h>
106 #include <net/lwtunnel.h>
107 #include <net/netevent.h>
108 #include <net/rtnetlink.h>
110 #include <linux/sysctl.h>
111 #include <linux/kmemleak.h>
113 #include <net/secure_seq.h>
114 #include <net/ip_tunnels.h>
115 #include <net/l3mdev.h>
117 #define RT_FL_TOS(oldflp4) \
118 ((oldflp4)->flowi4_tos & (IPTOS_RT_MASK | RTO_ONLINK))
120 #define RT_GC_TIMEOUT (300*HZ)
122 static int ip_rt_max_size
;
123 static int ip_rt_redirect_number __read_mostly
= 9;
124 static int ip_rt_redirect_load __read_mostly
= HZ
/ 50;
125 static int ip_rt_redirect_silence __read_mostly
= ((HZ
/ 50) << (9 + 1));
126 static int ip_rt_error_cost __read_mostly
= HZ
;
127 static int ip_rt_error_burst __read_mostly
= 5 * HZ
;
128 static int ip_rt_mtu_expires __read_mostly
= 10 * 60 * HZ
;
129 static int ip_rt_min_pmtu __read_mostly
= 512 + 20 + 20;
130 static int ip_rt_min_advmss __read_mostly
= 256;
132 static int ip_rt_gc_timeout __read_mostly
= RT_GC_TIMEOUT
;
134 * Interface to generic destination cache.
137 static struct dst_entry
*ipv4_dst_check(struct dst_entry
*dst
, u32 cookie
);
138 static unsigned int ipv4_default_advmss(const struct dst_entry
*dst
);
139 static unsigned int ipv4_mtu(const struct dst_entry
*dst
);
140 static struct dst_entry
*ipv4_negative_advice(struct dst_entry
*dst
);
141 static void ipv4_link_failure(struct sk_buff
*skb
);
142 static void ip_rt_update_pmtu(struct dst_entry
*dst
, struct sock
*sk
,
143 struct sk_buff
*skb
, u32 mtu
);
144 static void ip_do_redirect(struct dst_entry
*dst
, struct sock
*sk
,
145 struct sk_buff
*skb
);
146 static void ipv4_dst_destroy(struct dst_entry
*dst
);
148 static u32
*ipv4_cow_metrics(struct dst_entry
*dst
, unsigned long old
)
154 static struct neighbour
*ipv4_neigh_lookup(const struct dst_entry
*dst
,
158 static struct dst_ops ipv4_dst_ops
= {
160 .check
= ipv4_dst_check
,
161 .default_advmss
= ipv4_default_advmss
,
163 .cow_metrics
= ipv4_cow_metrics
,
164 .destroy
= ipv4_dst_destroy
,
165 .negative_advice
= ipv4_negative_advice
,
166 .link_failure
= ipv4_link_failure
,
167 .update_pmtu
= ip_rt_update_pmtu
,
168 .redirect
= ip_do_redirect
,
169 .local_out
= __ip_local_out
,
170 .neigh_lookup
= ipv4_neigh_lookup
,
173 #define ECN_OR_COST(class) TC_PRIO_##class
175 const __u8 ip_tos2prio
[16] = {
177 ECN_OR_COST(BESTEFFORT
),
179 ECN_OR_COST(BESTEFFORT
),
185 ECN_OR_COST(INTERACTIVE
),
187 ECN_OR_COST(INTERACTIVE
),
188 TC_PRIO_INTERACTIVE_BULK
,
189 ECN_OR_COST(INTERACTIVE_BULK
),
190 TC_PRIO_INTERACTIVE_BULK
,
191 ECN_OR_COST(INTERACTIVE_BULK
)
193 EXPORT_SYMBOL(ip_tos2prio
);
195 static DEFINE_PER_CPU(struct rt_cache_stat
, rt_cache_stat
);
196 #define RT_CACHE_STAT_INC(field) raw_cpu_inc(rt_cache_stat.field)
198 #ifdef CONFIG_PROC_FS
199 static void *rt_cache_seq_start(struct seq_file
*seq
, loff_t
*pos
)
203 return SEQ_START_TOKEN
;
206 static void *rt_cache_seq_next(struct seq_file
*seq
, void *v
, loff_t
*pos
)
212 static void rt_cache_seq_stop(struct seq_file
*seq
, void *v
)
216 static int rt_cache_seq_show(struct seq_file
*seq
, void *v
)
218 if (v
== SEQ_START_TOKEN
)
219 seq_printf(seq
, "%-127s\n",
220 "Iface\tDestination\tGateway \tFlags\t\tRefCnt\tUse\t"
221 "Metric\tSource\t\tMTU\tWindow\tIRTT\tTOS\tHHRef\t"
226 static const struct seq_operations rt_cache_seq_ops
= {
227 .start
= rt_cache_seq_start
,
228 .next
= rt_cache_seq_next
,
229 .stop
= rt_cache_seq_stop
,
230 .show
= rt_cache_seq_show
,
233 static int rt_cache_seq_open(struct inode
*inode
, struct file
*file
)
235 return seq_open(file
, &rt_cache_seq_ops
);
238 static const struct file_operations rt_cache_seq_fops
= {
239 .owner
= THIS_MODULE
,
240 .open
= rt_cache_seq_open
,
243 .release
= seq_release
,
247 static void *rt_cpu_seq_start(struct seq_file
*seq
, loff_t
*pos
)
252 return SEQ_START_TOKEN
;
254 for (cpu
= *pos
-1; cpu
< nr_cpu_ids
; ++cpu
) {
255 if (!cpu_possible(cpu
))
258 return &per_cpu(rt_cache_stat
, cpu
);
263 static void *rt_cpu_seq_next(struct seq_file
*seq
, void *v
, loff_t
*pos
)
267 for (cpu
= *pos
; cpu
< nr_cpu_ids
; ++cpu
) {
268 if (!cpu_possible(cpu
))
271 return &per_cpu(rt_cache_stat
, cpu
);
277 static void rt_cpu_seq_stop(struct seq_file
*seq
, void *v
)
282 static int rt_cpu_seq_show(struct seq_file
*seq
, void *v
)
284 struct rt_cache_stat
*st
= v
;
286 if (v
== SEQ_START_TOKEN
) {
287 seq_printf(seq
, "entries in_hit in_slow_tot in_slow_mc in_no_route in_brd in_martian_dst in_martian_src out_hit out_slow_tot out_slow_mc gc_total gc_ignored gc_goal_miss gc_dst_overflow in_hlist_search out_hlist_search\n");
291 seq_printf(seq
,"%08x %08x %08x %08x %08x %08x %08x %08x "
292 " %08x %08x %08x %08x %08x %08x %08x %08x %08x \n",
293 dst_entries_get_slow(&ipv4_dst_ops
),
306 0, /* st->gc_total */
307 0, /* st->gc_ignored */
308 0, /* st->gc_goal_miss */
309 0, /* st->gc_dst_overflow */
310 0, /* st->in_hlist_search */
311 0 /* st->out_hlist_search */
316 static const struct seq_operations rt_cpu_seq_ops
= {
317 .start
= rt_cpu_seq_start
,
318 .next
= rt_cpu_seq_next
,
319 .stop
= rt_cpu_seq_stop
,
320 .show
= rt_cpu_seq_show
,
324 static int rt_cpu_seq_open(struct inode
*inode
, struct file
*file
)
326 return seq_open(file
, &rt_cpu_seq_ops
);
329 static const struct file_operations rt_cpu_seq_fops
= {
330 .owner
= THIS_MODULE
,
331 .open
= rt_cpu_seq_open
,
334 .release
= seq_release
,
337 #ifdef CONFIG_IP_ROUTE_CLASSID
338 static int rt_acct_proc_show(struct seq_file
*m
, void *v
)
340 struct ip_rt_acct
*dst
, *src
;
343 dst
= kcalloc(256, sizeof(struct ip_rt_acct
), GFP_KERNEL
);
347 for_each_possible_cpu(i
) {
348 src
= (struct ip_rt_acct
*)per_cpu_ptr(ip_rt_acct
, i
);
349 for (j
= 0; j
< 256; j
++) {
350 dst
[j
].o_bytes
+= src
[j
].o_bytes
;
351 dst
[j
].o_packets
+= src
[j
].o_packets
;
352 dst
[j
].i_bytes
+= src
[j
].i_bytes
;
353 dst
[j
].i_packets
+= src
[j
].i_packets
;
357 seq_write(m
, dst
, 256 * sizeof(struct ip_rt_acct
));
362 static int rt_acct_proc_open(struct inode
*inode
, struct file
*file
)
364 return single_open(file
, rt_acct_proc_show
, NULL
);
367 static const struct file_operations rt_acct_proc_fops
= {
368 .owner
= THIS_MODULE
,
369 .open
= rt_acct_proc_open
,
372 .release
= single_release
,
376 static int __net_init
ip_rt_do_proc_init(struct net
*net
)
378 struct proc_dir_entry
*pde
;
380 pde
= proc_create("rt_cache", S_IRUGO
, net
->proc_net
,
385 pde
= proc_create("rt_cache", S_IRUGO
,
386 net
->proc_net_stat
, &rt_cpu_seq_fops
);
390 #ifdef CONFIG_IP_ROUTE_CLASSID
391 pde
= proc_create("rt_acct", 0, net
->proc_net
, &rt_acct_proc_fops
);
397 #ifdef CONFIG_IP_ROUTE_CLASSID
399 remove_proc_entry("rt_cache", net
->proc_net_stat
);
402 remove_proc_entry("rt_cache", net
->proc_net
);
407 static void __net_exit
ip_rt_do_proc_exit(struct net
*net
)
409 remove_proc_entry("rt_cache", net
->proc_net_stat
);
410 remove_proc_entry("rt_cache", net
->proc_net
);
411 #ifdef CONFIG_IP_ROUTE_CLASSID
412 remove_proc_entry("rt_acct", net
->proc_net
);
416 static struct pernet_operations ip_rt_proc_ops __net_initdata
= {
417 .init
= ip_rt_do_proc_init
,
418 .exit
= ip_rt_do_proc_exit
,
421 static int __init
ip_rt_proc_init(void)
423 return register_pernet_subsys(&ip_rt_proc_ops
);
427 static inline int ip_rt_proc_init(void)
431 #endif /* CONFIG_PROC_FS */
433 static inline bool rt_is_expired(const struct rtable
*rth
)
435 return rth
->rt_genid
!= rt_genid_ipv4(dev_net(rth
->dst
.dev
));
438 void rt_cache_flush(struct net
*net
)
440 rt_genid_bump_ipv4(net
);
443 static struct neighbour
*ipv4_neigh_lookup(const struct dst_entry
*dst
,
447 struct net_device
*dev
= dst
->dev
;
448 const __be32
*pkey
= daddr
;
449 const struct rtable
*rt
;
452 rt
= (const struct rtable
*) dst
;
454 pkey
= (const __be32
*) &rt
->rt_gateway
;
456 pkey
= &ip_hdr(skb
)->daddr
;
458 n
= __ipv4_neigh_lookup(dev
, *(__force u32
*)pkey
);
461 return neigh_create(&arp_tbl
, pkey
, dev
);
464 #define IP_IDENTS_SZ 2048u
466 static atomic_t
*ip_idents __read_mostly
;
467 static u32
*ip_tstamps __read_mostly
;
469 /* In order to protect privacy, we add a perturbation to identifiers
470 * if one generator is seldom used. This makes hard for an attacker
471 * to infer how many packets were sent between two points in time.
473 u32
ip_idents_reserve(u32 hash
, int segs
)
475 u32
*p_tstamp
= ip_tstamps
+ hash
% IP_IDENTS_SZ
;
476 atomic_t
*p_id
= ip_idents
+ hash
% IP_IDENTS_SZ
;
477 u32 old
= ACCESS_ONCE(*p_tstamp
);
478 u32 now
= (u32
)jiffies
;
481 if (old
!= now
&& cmpxchg(p_tstamp
, old
, now
) == old
)
482 delta
= prandom_u32_max(now
- old
);
484 return atomic_add_return(segs
+ delta
, p_id
) - segs
;
486 EXPORT_SYMBOL(ip_idents_reserve
);
488 void __ip_select_ident(struct net
*net
, struct iphdr
*iph
, int segs
)
490 static u32 ip_idents_hashrnd __read_mostly
;
493 net_get_random_once(&ip_idents_hashrnd
, sizeof(ip_idents_hashrnd
));
495 hash
= jhash_3words((__force u32
)iph
->daddr
,
496 (__force u32
)iph
->saddr
,
497 iph
->protocol
^ net_hash_mix(net
),
499 id
= ip_idents_reserve(hash
, segs
);
502 EXPORT_SYMBOL(__ip_select_ident
);
504 static void __build_flow_key(struct flowi4
*fl4
, const struct sock
*sk
,
505 const struct iphdr
*iph
,
507 u8 prot
, u32 mark
, int flow_flags
)
510 const struct inet_sock
*inet
= inet_sk(sk
);
512 oif
= sk
->sk_bound_dev_if
;
514 tos
= RT_CONN_FLAGS(sk
);
515 prot
= inet
->hdrincl
? IPPROTO_RAW
: sk
->sk_protocol
;
517 flowi4_init_output(fl4
, oif
, mark
, tos
,
518 RT_SCOPE_UNIVERSE
, prot
,
520 iph
->daddr
, iph
->saddr
, 0, 0);
523 static void build_skb_flow_key(struct flowi4
*fl4
, const struct sk_buff
*skb
,
524 const struct sock
*sk
)
526 const struct iphdr
*iph
= ip_hdr(skb
);
527 int oif
= skb
->dev
->ifindex
;
528 u8 tos
= RT_TOS(iph
->tos
);
529 u8 prot
= iph
->protocol
;
530 u32 mark
= skb
->mark
;
532 __build_flow_key(fl4
, sk
, iph
, oif
, tos
, prot
, mark
, 0);
535 static void build_sk_flow_key(struct flowi4
*fl4
, const struct sock
*sk
)
537 const struct inet_sock
*inet
= inet_sk(sk
);
538 const struct ip_options_rcu
*inet_opt
;
539 __be32 daddr
= inet
->inet_daddr
;
542 inet_opt
= rcu_dereference(inet
->inet_opt
);
543 if (inet_opt
&& inet_opt
->opt
.srr
)
544 daddr
= inet_opt
->opt
.faddr
;
545 flowi4_init_output(fl4
, sk
->sk_bound_dev_if
, sk
->sk_mark
,
546 RT_CONN_FLAGS(sk
), RT_SCOPE_UNIVERSE
,
547 inet
->hdrincl
? IPPROTO_RAW
: sk
->sk_protocol
,
548 inet_sk_flowi_flags(sk
),
549 daddr
, inet
->inet_saddr
, 0, 0);
553 static void ip_rt_build_flow_key(struct flowi4
*fl4
, const struct sock
*sk
,
554 const struct sk_buff
*skb
)
557 build_skb_flow_key(fl4
, skb
, sk
);
559 build_sk_flow_key(fl4
, sk
);
562 static inline void rt_free(struct rtable
*rt
)
564 call_rcu(&rt
->dst
.rcu_head
, dst_rcu_free
);
567 static DEFINE_SPINLOCK(fnhe_lock
);
569 static void fnhe_flush_routes(struct fib_nh_exception
*fnhe
)
573 rt
= rcu_dereference(fnhe
->fnhe_rth_input
);
575 RCU_INIT_POINTER(fnhe
->fnhe_rth_input
, NULL
);
578 rt
= rcu_dereference(fnhe
->fnhe_rth_output
);
580 RCU_INIT_POINTER(fnhe
->fnhe_rth_output
, NULL
);
585 static struct fib_nh_exception
*fnhe_oldest(struct fnhe_hash_bucket
*hash
)
587 struct fib_nh_exception
*fnhe
, *oldest
;
589 oldest
= rcu_dereference(hash
->chain
);
590 for (fnhe
= rcu_dereference(oldest
->fnhe_next
); fnhe
;
591 fnhe
= rcu_dereference(fnhe
->fnhe_next
)) {
592 if (time_before(fnhe
->fnhe_stamp
, oldest
->fnhe_stamp
))
595 fnhe_flush_routes(oldest
);
599 static inline u32
fnhe_hashfun(__be32 daddr
)
601 static u32 fnhe_hashrnd __read_mostly
;
604 net_get_random_once(&fnhe_hashrnd
, sizeof(fnhe_hashrnd
));
605 hval
= jhash_1word((__force u32
) daddr
, fnhe_hashrnd
);
606 return hash_32(hval
, FNHE_HASH_SHIFT
);
609 static void fill_route_from_fnhe(struct rtable
*rt
, struct fib_nh_exception
*fnhe
)
611 rt
->rt_pmtu
= fnhe
->fnhe_pmtu
;
612 rt
->dst
.expires
= fnhe
->fnhe_expires
;
615 rt
->rt_flags
|= RTCF_REDIRECTED
;
616 rt
->rt_gateway
= fnhe
->fnhe_gw
;
617 rt
->rt_uses_gateway
= 1;
621 static void update_or_create_fnhe(struct fib_nh
*nh
, __be32 daddr
, __be32 gw
,
622 u32 pmtu
, unsigned long expires
)
624 struct fnhe_hash_bucket
*hash
;
625 struct fib_nh_exception
*fnhe
;
629 u32 hval
= fnhe_hashfun(daddr
);
631 spin_lock_bh(&fnhe_lock
);
633 hash
= rcu_dereference(nh
->nh_exceptions
);
635 hash
= kzalloc(FNHE_HASH_SIZE
* sizeof(*hash
), GFP_ATOMIC
);
638 rcu_assign_pointer(nh
->nh_exceptions
, hash
);
644 for (fnhe
= rcu_dereference(hash
->chain
); fnhe
;
645 fnhe
= rcu_dereference(fnhe
->fnhe_next
)) {
646 if (fnhe
->fnhe_daddr
== daddr
)
655 fnhe
->fnhe_pmtu
= pmtu
;
656 fnhe
->fnhe_expires
= max(1UL, expires
);
658 /* Update all cached dsts too */
659 rt
= rcu_dereference(fnhe
->fnhe_rth_input
);
661 fill_route_from_fnhe(rt
, fnhe
);
662 rt
= rcu_dereference(fnhe
->fnhe_rth_output
);
664 fill_route_from_fnhe(rt
, fnhe
);
666 if (depth
> FNHE_RECLAIM_DEPTH
)
667 fnhe
= fnhe_oldest(hash
);
669 fnhe
= kzalloc(sizeof(*fnhe
), GFP_ATOMIC
);
673 fnhe
->fnhe_next
= hash
->chain
;
674 rcu_assign_pointer(hash
->chain
, fnhe
);
676 fnhe
->fnhe_genid
= fnhe_genid(dev_net(nh
->nh_dev
));
677 fnhe
->fnhe_daddr
= daddr
;
679 fnhe
->fnhe_pmtu
= pmtu
;
680 fnhe
->fnhe_expires
= expires
;
682 /* Exception created; mark the cached routes for the nexthop
683 * stale, so anyone caching it rechecks if this exception
686 rt
= rcu_dereference(nh
->nh_rth_input
);
688 rt
->dst
.obsolete
= DST_OBSOLETE_KILL
;
690 for_each_possible_cpu(i
) {
691 struct rtable __rcu
**prt
;
692 prt
= per_cpu_ptr(nh
->nh_pcpu_rth_output
, i
);
693 rt
= rcu_dereference(*prt
);
695 rt
->dst
.obsolete
= DST_OBSOLETE_KILL
;
699 fnhe
->fnhe_stamp
= jiffies
;
702 spin_unlock_bh(&fnhe_lock
);
705 static void __ip_do_redirect(struct rtable
*rt
, struct sk_buff
*skb
, struct flowi4
*fl4
,
708 __be32 new_gw
= icmp_hdr(skb
)->un
.gateway
;
709 __be32 old_gw
= ip_hdr(skb
)->saddr
;
710 struct net_device
*dev
= skb
->dev
;
711 struct in_device
*in_dev
;
712 struct fib_result res
;
716 switch (icmp_hdr(skb
)->code
& 7) {
718 case ICMP_REDIR_NETTOS
:
719 case ICMP_REDIR_HOST
:
720 case ICMP_REDIR_HOSTTOS
:
727 if (rt
->rt_gateway
!= old_gw
)
730 in_dev
= __in_dev_get_rcu(dev
);
735 if (new_gw
== old_gw
|| !IN_DEV_RX_REDIRECTS(in_dev
) ||
736 ipv4_is_multicast(new_gw
) || ipv4_is_lbcast(new_gw
) ||
737 ipv4_is_zeronet(new_gw
))
738 goto reject_redirect
;
740 if (!IN_DEV_SHARED_MEDIA(in_dev
)) {
741 if (!inet_addr_onlink(in_dev
, new_gw
, old_gw
))
742 goto reject_redirect
;
743 if (IN_DEV_SEC_REDIRECTS(in_dev
) && ip_fib_check_default(new_gw
, dev
))
744 goto reject_redirect
;
746 if (inet_addr_type(net
, new_gw
) != RTN_UNICAST
)
747 goto reject_redirect
;
750 n
= ipv4_neigh_lookup(&rt
->dst
, NULL
, &new_gw
);
752 if (!(n
->nud_state
& NUD_VALID
)) {
753 neigh_event_send(n
, NULL
);
755 if (fib_lookup(net
, fl4
, &res
, 0) == 0) {
756 struct fib_nh
*nh
= &FIB_RES_NH(res
);
758 update_or_create_fnhe(nh
, fl4
->daddr
, new_gw
,
759 0, jiffies
+ ip_rt_gc_timeout
);
762 rt
->dst
.obsolete
= DST_OBSOLETE_KILL
;
763 call_netevent_notifiers(NETEVENT_NEIGH_UPDATE
, n
);
770 #ifdef CONFIG_IP_ROUTE_VERBOSE
771 if (IN_DEV_LOG_MARTIANS(in_dev
)) {
772 const struct iphdr
*iph
= (const struct iphdr
*) skb
->data
;
773 __be32 daddr
= iph
->daddr
;
774 __be32 saddr
= iph
->saddr
;
776 net_info_ratelimited("Redirect from %pI4 on %s about %pI4 ignored\n"
777 " Advised path = %pI4 -> %pI4\n",
778 &old_gw
, dev
->name
, &new_gw
,
785 static void ip_do_redirect(struct dst_entry
*dst
, struct sock
*sk
, struct sk_buff
*skb
)
789 const struct iphdr
*iph
= (const struct iphdr
*) skb
->data
;
790 int oif
= skb
->dev
->ifindex
;
791 u8 tos
= RT_TOS(iph
->tos
);
792 u8 prot
= iph
->protocol
;
793 u32 mark
= skb
->mark
;
795 rt
= (struct rtable
*) dst
;
797 __build_flow_key(&fl4
, sk
, iph
, oif
, tos
, prot
, mark
, 0);
798 __ip_do_redirect(rt
, skb
, &fl4
, true);
801 static struct dst_entry
*ipv4_negative_advice(struct dst_entry
*dst
)
803 struct rtable
*rt
= (struct rtable
*)dst
;
804 struct dst_entry
*ret
= dst
;
807 if (dst
->obsolete
> 0) {
810 } else if ((rt
->rt_flags
& RTCF_REDIRECTED
) ||
821 * 1. The first ip_rt_redirect_number redirects are sent
822 * with exponential backoff, then we stop sending them at all,
823 * assuming that the host ignores our redirects.
824 * 2. If we did not see packets requiring redirects
825 * during ip_rt_redirect_silence, we assume that the host
826 * forgot redirected route and start to send redirects again.
828 * This algorithm is much cheaper and more intelligent than dumb load limiting
831 * NOTE. Do not forget to inhibit load limiting for redirects (redundant)
832 * and "frag. need" (breaks PMTU discovery) in icmp.c.
835 void ip_rt_send_redirect(struct sk_buff
*skb
)
837 struct rtable
*rt
= skb_rtable(skb
);
838 struct in_device
*in_dev
;
839 struct inet_peer
*peer
;
845 in_dev
= __in_dev_get_rcu(rt
->dst
.dev
);
846 if (!in_dev
|| !IN_DEV_TX_REDIRECTS(in_dev
)) {
850 log_martians
= IN_DEV_LOG_MARTIANS(in_dev
);
851 vif
= l3mdev_master_ifindex_rcu(rt
->dst
.dev
);
854 net
= dev_net(rt
->dst
.dev
);
855 peer
= inet_getpeer_v4(net
->ipv4
.peers
, ip_hdr(skb
)->saddr
, vif
, 1);
857 icmp_send(skb
, ICMP_REDIRECT
, ICMP_REDIR_HOST
,
858 rt_nexthop(rt
, ip_hdr(skb
)->daddr
));
862 /* No redirected packets during ip_rt_redirect_silence;
863 * reset the algorithm.
865 if (time_after(jiffies
, peer
->rate_last
+ ip_rt_redirect_silence
))
866 peer
->rate_tokens
= 0;
868 /* Too many ignored redirects; do not send anything
869 * set dst.rate_last to the last seen redirected packet.
871 if (peer
->rate_tokens
>= ip_rt_redirect_number
) {
872 peer
->rate_last
= jiffies
;
876 /* Check for load limit; set rate_last to the latest sent
879 if (peer
->rate_tokens
== 0 ||
882 (ip_rt_redirect_load
<< peer
->rate_tokens
)))) {
883 __be32 gw
= rt_nexthop(rt
, ip_hdr(skb
)->daddr
);
885 icmp_send(skb
, ICMP_REDIRECT
, ICMP_REDIR_HOST
, gw
);
886 peer
->rate_last
= jiffies
;
888 #ifdef CONFIG_IP_ROUTE_VERBOSE
890 peer
->rate_tokens
== ip_rt_redirect_number
)
891 net_warn_ratelimited("host %pI4/if%d ignores redirects for %pI4 to %pI4\n",
892 &ip_hdr(skb
)->saddr
, inet_iif(skb
),
893 &ip_hdr(skb
)->daddr
, &gw
);
900 static int ip_error(struct sk_buff
*skb
)
902 struct in_device
*in_dev
= __in_dev_get_rcu(skb
->dev
);
903 struct rtable
*rt
= skb_rtable(skb
);
904 struct inet_peer
*peer
;
910 /* IP on this device is disabled. */
914 net
= dev_net(rt
->dst
.dev
);
915 if (!IN_DEV_FORWARD(in_dev
)) {
916 switch (rt
->dst
.error
) {
918 IP_INC_STATS_BH(net
, IPSTATS_MIB_INADDRERRORS
);
922 IP_INC_STATS_BH(net
, IPSTATS_MIB_INNOROUTES
);
928 switch (rt
->dst
.error
) {
933 code
= ICMP_HOST_UNREACH
;
936 code
= ICMP_NET_UNREACH
;
937 IP_INC_STATS_BH(net
, IPSTATS_MIB_INNOROUTES
);
940 code
= ICMP_PKT_FILTERED
;
944 peer
= inet_getpeer_v4(net
->ipv4
.peers
, ip_hdr(skb
)->saddr
,
945 l3mdev_master_ifindex(skb
->dev
), 1);
950 peer
->rate_tokens
+= now
- peer
->rate_last
;
951 if (peer
->rate_tokens
> ip_rt_error_burst
)
952 peer
->rate_tokens
= ip_rt_error_burst
;
953 peer
->rate_last
= now
;
954 if (peer
->rate_tokens
>= ip_rt_error_cost
)
955 peer
->rate_tokens
-= ip_rt_error_cost
;
961 icmp_send(skb
, ICMP_DEST_UNREACH
, code
, 0);
967 static void __ip_rt_update_pmtu(struct rtable
*rt
, struct flowi4
*fl4
, u32 mtu
)
969 struct dst_entry
*dst
= &rt
->dst
;
970 struct fib_result res
;
972 if (dst_metric_locked(dst
, RTAX_MTU
))
975 if (ipv4_mtu(dst
) < mtu
)
978 if (mtu
< ip_rt_min_pmtu
)
979 mtu
= ip_rt_min_pmtu
;
981 if (rt
->rt_pmtu
== mtu
&&
982 time_before(jiffies
, dst
->expires
- ip_rt_mtu_expires
/ 2))
986 if (fib_lookup(dev_net(dst
->dev
), fl4
, &res
, 0) == 0) {
987 struct fib_nh
*nh
= &FIB_RES_NH(res
);
989 update_or_create_fnhe(nh
, fl4
->daddr
, 0, mtu
,
990 jiffies
+ ip_rt_mtu_expires
);
995 static void ip_rt_update_pmtu(struct dst_entry
*dst
, struct sock
*sk
,
996 struct sk_buff
*skb
, u32 mtu
)
998 struct rtable
*rt
= (struct rtable
*) dst
;
1001 ip_rt_build_flow_key(&fl4
, sk
, skb
);
1002 __ip_rt_update_pmtu(rt
, &fl4
, mtu
);
1005 void ipv4_update_pmtu(struct sk_buff
*skb
, struct net
*net
, u32 mtu
,
1006 int oif
, u32 mark
, u8 protocol
, int flow_flags
)
1008 const struct iphdr
*iph
= (const struct iphdr
*) skb
->data
;
1013 mark
= IP4_REPLY_MARK(net
, skb
->mark
);
1015 __build_flow_key(&fl4
, NULL
, iph
, oif
,
1016 RT_TOS(iph
->tos
), protocol
, mark
, flow_flags
);
1017 rt
= __ip_route_output_key(net
, &fl4
);
1019 __ip_rt_update_pmtu(rt
, &fl4
, mtu
);
1023 EXPORT_SYMBOL_GPL(ipv4_update_pmtu
);
1025 static void __ipv4_sk_update_pmtu(struct sk_buff
*skb
, struct sock
*sk
, u32 mtu
)
1027 const struct iphdr
*iph
= (const struct iphdr
*) skb
->data
;
1031 __build_flow_key(&fl4
, sk
, iph
, 0, 0, 0, 0, 0);
1033 if (!fl4
.flowi4_mark
)
1034 fl4
.flowi4_mark
= IP4_REPLY_MARK(sock_net(sk
), skb
->mark
);
1036 rt
= __ip_route_output_key(sock_net(sk
), &fl4
);
1038 __ip_rt_update_pmtu(rt
, &fl4
, mtu
);
1043 void ipv4_sk_update_pmtu(struct sk_buff
*skb
, struct sock
*sk
, u32 mtu
)
1045 const struct iphdr
*iph
= (const struct iphdr
*) skb
->data
;
1048 struct dst_entry
*odst
= NULL
;
1053 if (!ip_sk_accept_pmtu(sk
))
1056 odst
= sk_dst_get(sk
);
1058 if (sock_owned_by_user(sk
) || !odst
) {
1059 __ipv4_sk_update_pmtu(skb
, sk
, mtu
);
1063 __build_flow_key(&fl4
, sk
, iph
, 0, 0, 0, 0, 0);
1065 rt
= (struct rtable
*)odst
;
1066 if (odst
->obsolete
&& !odst
->ops
->check(odst
, 0)) {
1067 rt
= ip_route_output_flow(sock_net(sk
), &fl4
, sk
);
1074 __ip_rt_update_pmtu((struct rtable
*) rt
->dst
.path
, &fl4
, mtu
);
1076 if (!dst_check(&rt
->dst
, 0)) {
1078 dst_release(&rt
->dst
);
1080 rt
= ip_route_output_flow(sock_net(sk
), &fl4
, sk
);
1088 sk_dst_set(sk
, &rt
->dst
);
1094 EXPORT_SYMBOL_GPL(ipv4_sk_update_pmtu
);
1096 void ipv4_redirect(struct sk_buff
*skb
, struct net
*net
,
1097 int oif
, u32 mark
, u8 protocol
, int flow_flags
)
1099 const struct iphdr
*iph
= (const struct iphdr
*) skb
->data
;
1103 __build_flow_key(&fl4
, NULL
, iph
, oif
,
1104 RT_TOS(iph
->tos
), protocol
, mark
, flow_flags
);
1105 rt
= __ip_route_output_key(net
, &fl4
);
1107 __ip_do_redirect(rt
, skb
, &fl4
, false);
1111 EXPORT_SYMBOL_GPL(ipv4_redirect
);
1113 void ipv4_sk_redirect(struct sk_buff
*skb
, struct sock
*sk
)
1115 const struct iphdr
*iph
= (const struct iphdr
*) skb
->data
;
1119 __build_flow_key(&fl4
, sk
, iph
, 0, 0, 0, 0, 0);
1120 rt
= __ip_route_output_key(sock_net(sk
), &fl4
);
1122 __ip_do_redirect(rt
, skb
, &fl4
, false);
1126 EXPORT_SYMBOL_GPL(ipv4_sk_redirect
);
1128 static struct dst_entry
*ipv4_dst_check(struct dst_entry
*dst
, u32 cookie
)
1130 struct rtable
*rt
= (struct rtable
*) dst
;
1132 /* All IPV4 dsts are created with ->obsolete set to the value
1133 * DST_OBSOLETE_FORCE_CHK which forces validation calls down
1134 * into this function always.
1136 * When a PMTU/redirect information update invalidates a route,
1137 * this is indicated by setting obsolete to DST_OBSOLETE_KILL or
1138 * DST_OBSOLETE_DEAD by dst_free().
1140 if (dst
->obsolete
!= DST_OBSOLETE_FORCE_CHK
|| rt_is_expired(rt
))
1145 static void ipv4_link_failure(struct sk_buff
*skb
)
1149 icmp_send(skb
, ICMP_DEST_UNREACH
, ICMP_HOST_UNREACH
, 0);
1151 rt
= skb_rtable(skb
);
1153 dst_set_expires(&rt
->dst
, 0);
1156 static int ip_rt_bug(struct net
*net
, struct sock
*sk
, struct sk_buff
*skb
)
1158 pr_debug("%s: %pI4 -> %pI4, %s\n",
1159 __func__
, &ip_hdr(skb
)->saddr
, &ip_hdr(skb
)->daddr
,
1160 skb
->dev
? skb
->dev
->name
: "?");
1167 We do not cache source address of outgoing interface,
1168 because it is used only by IP RR, TS and SRR options,
1169 so that it out of fast path.
1171 BTW remember: "addr" is allowed to be not aligned
1175 void ip_rt_get_source(u8
*addr
, struct sk_buff
*skb
, struct rtable
*rt
)
1179 if (rt_is_output_route(rt
))
1180 src
= ip_hdr(skb
)->saddr
;
1182 struct fib_result res
;
1188 memset(&fl4
, 0, sizeof(fl4
));
1189 fl4
.daddr
= iph
->daddr
;
1190 fl4
.saddr
= iph
->saddr
;
1191 fl4
.flowi4_tos
= RT_TOS(iph
->tos
);
1192 fl4
.flowi4_oif
= rt
->dst
.dev
->ifindex
;
1193 fl4
.flowi4_iif
= skb
->dev
->ifindex
;
1194 fl4
.flowi4_mark
= skb
->mark
;
1197 if (fib_lookup(dev_net(rt
->dst
.dev
), &fl4
, &res
, 0) == 0)
1198 src
= FIB_RES_PREFSRC(dev_net(rt
->dst
.dev
), res
);
1200 src
= inet_select_addr(rt
->dst
.dev
,
1201 rt_nexthop(rt
, iph
->daddr
),
1205 memcpy(addr
, &src
, 4);
1208 #ifdef CONFIG_IP_ROUTE_CLASSID
1209 static void set_class_tag(struct rtable
*rt
, u32 tag
)
1211 if (!(rt
->dst
.tclassid
& 0xFFFF))
1212 rt
->dst
.tclassid
|= tag
& 0xFFFF;
1213 if (!(rt
->dst
.tclassid
& 0xFFFF0000))
1214 rt
->dst
.tclassid
|= tag
& 0xFFFF0000;
1218 static unsigned int ipv4_default_advmss(const struct dst_entry
*dst
)
1220 unsigned int advmss
= dst_metric_raw(dst
, RTAX_ADVMSS
);
1223 advmss
= max_t(unsigned int, dst
->dev
->mtu
- 40,
1225 if (advmss
> 65535 - 40)
1226 advmss
= 65535 - 40;
1231 static unsigned int ipv4_mtu(const struct dst_entry
*dst
)
1233 const struct rtable
*rt
= (const struct rtable
*) dst
;
1234 unsigned int mtu
= rt
->rt_pmtu
;
1236 if (!mtu
|| time_after_eq(jiffies
, rt
->dst
.expires
))
1237 mtu
= dst_metric_raw(dst
, RTAX_MTU
);
1242 mtu
= dst
->dev
->mtu
;
1244 if (unlikely(dst_metric_locked(dst
, RTAX_MTU
))) {
1245 if (rt
->rt_uses_gateway
&& mtu
> 576)
1249 return min_t(unsigned int, mtu
, IP_MAX_MTU
);
1252 static struct fib_nh_exception
*find_exception(struct fib_nh
*nh
, __be32 daddr
)
1254 struct fnhe_hash_bucket
*hash
= rcu_dereference(nh
->nh_exceptions
);
1255 struct fib_nh_exception
*fnhe
;
1261 hval
= fnhe_hashfun(daddr
);
1263 for (fnhe
= rcu_dereference(hash
[hval
].chain
); fnhe
;
1264 fnhe
= rcu_dereference(fnhe
->fnhe_next
)) {
1265 if (fnhe
->fnhe_daddr
== daddr
)
1271 static bool rt_bind_exception(struct rtable
*rt
, struct fib_nh_exception
*fnhe
,
1276 spin_lock_bh(&fnhe_lock
);
1278 if (daddr
== fnhe
->fnhe_daddr
) {
1279 struct rtable __rcu
**porig
;
1280 struct rtable
*orig
;
1281 int genid
= fnhe_genid(dev_net(rt
->dst
.dev
));
1283 if (rt_is_input_route(rt
))
1284 porig
= &fnhe
->fnhe_rth_input
;
1286 porig
= &fnhe
->fnhe_rth_output
;
1287 orig
= rcu_dereference(*porig
);
1289 if (fnhe
->fnhe_genid
!= genid
) {
1290 fnhe
->fnhe_genid
= genid
;
1292 fnhe
->fnhe_pmtu
= 0;
1293 fnhe
->fnhe_expires
= 0;
1294 fnhe_flush_routes(fnhe
);
1297 fill_route_from_fnhe(rt
, fnhe
);
1298 if (!rt
->rt_gateway
)
1299 rt
->rt_gateway
= daddr
;
1301 if (!(rt
->dst
.flags
& DST_NOCACHE
)) {
1302 rcu_assign_pointer(*porig
, rt
);
1308 fnhe
->fnhe_stamp
= jiffies
;
1310 spin_unlock_bh(&fnhe_lock
);
1315 static bool rt_cache_route(struct fib_nh
*nh
, struct rtable
*rt
)
1317 struct rtable
*orig
, *prev
, **p
;
1320 if (rt_is_input_route(rt
)) {
1321 p
= (struct rtable
**)&nh
->nh_rth_input
;
1323 p
= (struct rtable
**)raw_cpu_ptr(nh
->nh_pcpu_rth_output
);
1327 prev
= cmpxchg(p
, orig
, rt
);
1337 struct uncached_list
{
1339 struct list_head head
;
1342 static DEFINE_PER_CPU_ALIGNED(struct uncached_list
, rt_uncached_list
);
1344 static void rt_add_uncached_list(struct rtable
*rt
)
1346 struct uncached_list
*ul
= raw_cpu_ptr(&rt_uncached_list
);
1348 rt
->rt_uncached_list
= ul
;
1350 spin_lock_bh(&ul
->lock
);
1351 list_add_tail(&rt
->rt_uncached
, &ul
->head
);
1352 spin_unlock_bh(&ul
->lock
);
1355 static void ipv4_dst_destroy(struct dst_entry
*dst
)
1357 struct rtable
*rt
= (struct rtable
*) dst
;
1359 if (!list_empty(&rt
->rt_uncached
)) {
1360 struct uncached_list
*ul
= rt
->rt_uncached_list
;
1362 spin_lock_bh(&ul
->lock
);
1363 list_del(&rt
->rt_uncached
);
1364 spin_unlock_bh(&ul
->lock
);
1368 void rt_flush_dev(struct net_device
*dev
)
1370 struct net
*net
= dev_net(dev
);
1374 for_each_possible_cpu(cpu
) {
1375 struct uncached_list
*ul
= &per_cpu(rt_uncached_list
, cpu
);
1377 spin_lock_bh(&ul
->lock
);
1378 list_for_each_entry(rt
, &ul
->head
, rt_uncached
) {
1379 if (rt
->dst
.dev
!= dev
)
1381 rt
->dst
.dev
= net
->loopback_dev
;
1382 dev_hold(rt
->dst
.dev
);
1385 spin_unlock_bh(&ul
->lock
);
1389 static bool rt_cache_valid(const struct rtable
*rt
)
1392 rt
->dst
.obsolete
== DST_OBSOLETE_FORCE_CHK
&&
1396 static void rt_set_nexthop(struct rtable
*rt
, __be32 daddr
,
1397 const struct fib_result
*res
,
1398 struct fib_nh_exception
*fnhe
,
1399 struct fib_info
*fi
, u16 type
, u32 itag
)
1401 bool cached
= false;
1404 struct fib_nh
*nh
= &FIB_RES_NH(*res
);
1406 if (nh
->nh_gw
&& nh
->nh_scope
== RT_SCOPE_LINK
) {
1407 rt
->rt_gateway
= nh
->nh_gw
;
1408 rt
->rt_uses_gateway
= 1;
1410 dst_init_metrics(&rt
->dst
, fi
->fib_metrics
, true);
1411 #ifdef CONFIG_IP_ROUTE_CLASSID
1412 rt
->dst
.tclassid
= nh
->nh_tclassid
;
1414 rt
->dst
.lwtstate
= lwtstate_get(nh
->nh_lwtstate
);
1416 cached
= rt_bind_exception(rt
, fnhe
, daddr
);
1417 else if (!(rt
->dst
.flags
& DST_NOCACHE
))
1418 cached
= rt_cache_route(nh
, rt
);
1419 if (unlikely(!cached
)) {
1420 /* Routes we intend to cache in nexthop exception or
1421 * FIB nexthop have the DST_NOCACHE bit clear.
1422 * However, if we are unsuccessful at storing this
1423 * route into the cache we really need to set it.
1425 rt
->dst
.flags
|= DST_NOCACHE
;
1426 if (!rt
->rt_gateway
)
1427 rt
->rt_gateway
= daddr
;
1428 rt_add_uncached_list(rt
);
1431 rt_add_uncached_list(rt
);
1433 #ifdef CONFIG_IP_ROUTE_CLASSID
1434 #ifdef CONFIG_IP_MULTIPLE_TABLES
1435 set_class_tag(rt
, res
->tclassid
);
1437 set_class_tag(rt
, itag
);
1441 static struct rtable
*rt_dst_alloc(struct net_device
*dev
,
1442 unsigned int flags
, u16 type
,
1443 bool nopolicy
, bool noxfrm
, bool will_cache
)
1447 rt
= dst_alloc(&ipv4_dst_ops
, dev
, 1, DST_OBSOLETE_FORCE_CHK
,
1448 (will_cache
? 0 : (DST_HOST
| DST_NOCACHE
)) |
1449 (nopolicy
? DST_NOPOLICY
: 0) |
1450 (noxfrm
? DST_NOXFRM
: 0));
1453 rt
->rt_genid
= rt_genid_ipv4(dev_net(dev
));
1454 rt
->rt_flags
= flags
;
1456 rt
->rt_is_input
= 0;
1460 rt
->rt_uses_gateway
= 0;
1461 rt
->rt_table_id
= 0;
1462 INIT_LIST_HEAD(&rt
->rt_uncached
);
1464 rt
->dst
.output
= ip_output
;
1465 if (flags
& RTCF_LOCAL
)
1466 rt
->dst
.input
= ip_local_deliver
;
1472 /* called in rcu_read_lock() section */
1473 static int ip_route_input_mc(struct sk_buff
*skb
, __be32 daddr
, __be32 saddr
,
1474 u8 tos
, struct net_device
*dev
, int our
)
1477 struct in_device
*in_dev
= __in_dev_get_rcu(dev
);
1478 unsigned int flags
= RTCF_MULTICAST
;
1482 /* Primary sanity checks. */
1487 if (ipv4_is_multicast(saddr
) || ipv4_is_lbcast(saddr
) ||
1488 skb
->protocol
!= htons(ETH_P_IP
))
1491 if (ipv4_is_loopback(saddr
) && !IN_DEV_ROUTE_LOCALNET(in_dev
))
1494 if (ipv4_is_zeronet(saddr
)) {
1495 if (!ipv4_is_local_multicast(daddr
))
1498 err
= fib_validate_source(skb
, saddr
, 0, tos
, 0, dev
,
1504 flags
|= RTCF_LOCAL
;
1506 rth
= rt_dst_alloc(dev_net(dev
)->loopback_dev
, flags
, RTN_MULTICAST
,
1507 IN_DEV_CONF_GET(in_dev
, NOPOLICY
), false, false);
1511 #ifdef CONFIG_IP_ROUTE_CLASSID
1512 rth
->dst
.tclassid
= itag
;
1514 rth
->dst
.output
= ip_rt_bug
;
1515 rth
->rt_is_input
= 1;
1517 #ifdef CONFIG_IP_MROUTE
1518 if (!ipv4_is_local_multicast(daddr
) && IN_DEV_MFORWARD(in_dev
))
1519 rth
->dst
.input
= ip_mr_input
;
1521 RT_CACHE_STAT_INC(in_slow_mc
);
1523 skb_dst_set(skb
, &rth
->dst
);
1535 static void ip_handle_martian_source(struct net_device
*dev
,
1536 struct in_device
*in_dev
,
1537 struct sk_buff
*skb
,
1541 RT_CACHE_STAT_INC(in_martian_src
);
1542 #ifdef CONFIG_IP_ROUTE_VERBOSE
1543 if (IN_DEV_LOG_MARTIANS(in_dev
) && net_ratelimit()) {
1545 * RFC1812 recommendation, if source is martian,
1546 * the only hint is MAC header.
1548 pr_warn("martian source %pI4 from %pI4, on dev %s\n",
1549 &daddr
, &saddr
, dev
->name
);
1550 if (dev
->hard_header_len
&& skb_mac_header_was_set(skb
)) {
1551 print_hex_dump(KERN_WARNING
, "ll header: ",
1552 DUMP_PREFIX_OFFSET
, 16, 1,
1553 skb_mac_header(skb
),
1554 dev
->hard_header_len
, true);
1560 static void ip_del_fnhe(struct fib_nh
*nh
, __be32 daddr
)
1562 struct fnhe_hash_bucket
*hash
;
1563 struct fib_nh_exception
*fnhe
, __rcu
**fnhe_p
;
1564 u32 hval
= fnhe_hashfun(daddr
);
1566 spin_lock_bh(&fnhe_lock
);
1568 hash
= rcu_dereference_protected(nh
->nh_exceptions
,
1569 lockdep_is_held(&fnhe_lock
));
1572 fnhe_p
= &hash
->chain
;
1573 fnhe
= rcu_dereference_protected(*fnhe_p
, lockdep_is_held(&fnhe_lock
));
1575 if (fnhe
->fnhe_daddr
== daddr
) {
1576 rcu_assign_pointer(*fnhe_p
, rcu_dereference_protected(
1577 fnhe
->fnhe_next
, lockdep_is_held(&fnhe_lock
)));
1578 fnhe_flush_routes(fnhe
);
1579 kfree_rcu(fnhe
, rcu
);
1582 fnhe_p
= &fnhe
->fnhe_next
;
1583 fnhe
= rcu_dereference_protected(fnhe
->fnhe_next
,
1584 lockdep_is_held(&fnhe_lock
));
1587 spin_unlock_bh(&fnhe_lock
);
1590 /* called in rcu_read_lock() section */
1591 static int __mkroute_input(struct sk_buff
*skb
,
1592 const struct fib_result
*res
,
1593 struct in_device
*in_dev
,
1594 __be32 daddr
, __be32 saddr
, u32 tos
)
1596 struct fib_nh_exception
*fnhe
;
1599 struct in_device
*out_dev
;
1603 /* get a working reference to the output device */
1604 out_dev
= __in_dev_get_rcu(FIB_RES_DEV(*res
));
1606 net_crit_ratelimited("Bug in ip_route_input_slow(). Please report.\n");
1610 err
= fib_validate_source(skb
, saddr
, daddr
, tos
, FIB_RES_OIF(*res
),
1611 in_dev
->dev
, in_dev
, &itag
);
1613 ip_handle_martian_source(in_dev
->dev
, in_dev
, skb
, daddr
,
1619 do_cache
= res
->fi
&& !itag
;
1620 if (out_dev
== in_dev
&& err
&& IN_DEV_TX_REDIRECTS(out_dev
) &&
1621 skb
->protocol
== htons(ETH_P_IP
) &&
1622 (IN_DEV_SHARED_MEDIA(out_dev
) ||
1623 inet_addr_onlink(out_dev
, saddr
, FIB_RES_GW(*res
))))
1624 IPCB(skb
)->flags
|= IPSKB_DOREDIRECT
;
1626 if (skb
->protocol
!= htons(ETH_P_IP
)) {
1627 /* Not IP (i.e. ARP). Do not create route, if it is
1628 * invalid for proxy arp. DNAT routes are always valid.
1630 * Proxy arp feature have been extended to allow, ARP
1631 * replies back to the same interface, to support
1632 * Private VLAN switch technologies. See arp.c.
1634 if (out_dev
== in_dev
&&
1635 IN_DEV_PROXY_ARP_PVLAN(in_dev
) == 0) {
1641 fnhe
= find_exception(&FIB_RES_NH(*res
), daddr
);
1644 rth
= rcu_dereference(fnhe
->fnhe_rth_input
);
1645 if (rth
&& rth
->dst
.expires
&&
1646 time_after(jiffies
, rth
->dst
.expires
)) {
1647 ip_del_fnhe(&FIB_RES_NH(*res
), daddr
);
1654 rth
= rcu_dereference(FIB_RES_NH(*res
).nh_rth_input
);
1657 if (rt_cache_valid(rth
)) {
1658 skb_dst_set_noref(skb
, &rth
->dst
);
1663 rth
= rt_dst_alloc(out_dev
->dev
, 0, res
->type
,
1664 IN_DEV_CONF_GET(in_dev
, NOPOLICY
),
1665 IN_DEV_CONF_GET(out_dev
, NOXFRM
), do_cache
);
1671 rth
->rt_is_input
= 1;
1673 rth
->rt_table_id
= res
->table
->tb_id
;
1674 RT_CACHE_STAT_INC(in_slow_tot
);
1676 rth
->dst
.input
= ip_forward
;
1678 rt_set_nexthop(rth
, daddr
, res
, fnhe
, res
->fi
, res
->type
, itag
);
1679 if (lwtunnel_output_redirect(rth
->dst
.lwtstate
)) {
1680 rth
->dst
.lwtstate
->orig_output
= rth
->dst
.output
;
1681 rth
->dst
.output
= lwtunnel_output
;
1683 if (lwtunnel_input_redirect(rth
->dst
.lwtstate
)) {
1684 rth
->dst
.lwtstate
->orig_input
= rth
->dst
.input
;
1685 rth
->dst
.input
= lwtunnel_input
;
1687 skb_dst_set(skb
, &rth
->dst
);
1694 #ifdef CONFIG_IP_ROUTE_MULTIPATH
1696 /* To make ICMP packets follow the right flow, the multipath hash is
1697 * calculated from the inner IP addresses in reverse order.
1699 static int ip_multipath_icmp_hash(struct sk_buff
*skb
)
1701 const struct iphdr
*outer_iph
= ip_hdr(skb
);
1702 struct icmphdr _icmph
;
1703 const struct icmphdr
*icmph
;
1704 struct iphdr _inner_iph
;
1705 const struct iphdr
*inner_iph
;
1707 if (unlikely((outer_iph
->frag_off
& htons(IP_OFFSET
)) != 0))
1710 icmph
= skb_header_pointer(skb
, outer_iph
->ihl
* 4, sizeof(_icmph
),
1715 if (icmph
->type
!= ICMP_DEST_UNREACH
&&
1716 icmph
->type
!= ICMP_REDIRECT
&&
1717 icmph
->type
!= ICMP_TIME_EXCEEDED
&&
1718 icmph
->type
!= ICMP_PARAMETERPROB
) {
1722 inner_iph
= skb_header_pointer(skb
,
1723 outer_iph
->ihl
* 4 + sizeof(_icmph
),
1724 sizeof(_inner_iph
), &_inner_iph
);
1728 return fib_multipath_hash(inner_iph
->daddr
, inner_iph
->saddr
);
1731 return fib_multipath_hash(outer_iph
->saddr
, outer_iph
->daddr
);
1734 #endif /* CONFIG_IP_ROUTE_MULTIPATH */
1736 static int ip_mkroute_input(struct sk_buff
*skb
,
1737 struct fib_result
*res
,
1738 const struct flowi4
*fl4
,
1739 struct in_device
*in_dev
,
1740 __be32 daddr
, __be32 saddr
, u32 tos
)
1742 #ifdef CONFIG_IP_ROUTE_MULTIPATH
1743 if (res
->fi
&& res
->fi
->fib_nhs
> 1) {
1746 if (unlikely(ip_hdr(skb
)->protocol
== IPPROTO_ICMP
))
1747 h
= ip_multipath_icmp_hash(skb
);
1749 h
= fib_multipath_hash(saddr
, daddr
);
1750 fib_select_multipath(res
, h
);
1754 /* create a routing cache entry */
1755 return __mkroute_input(skb
, res
, in_dev
, daddr
, saddr
, tos
);
1759 * NOTE. We drop all the packets that has local source
1760 * addresses, because every properly looped back packet
1761 * must have correct destination already attached by output routine.
1763 * Such approach solves two big problems:
1764 * 1. Not simplex devices are handled properly.
1765 * 2. IP spoofing attempts are filtered with 100% of guarantee.
1766 * called with rcu_read_lock()
1769 static int ip_route_input_slow(struct sk_buff
*skb
, __be32 daddr
, __be32 saddr
,
1770 u8 tos
, struct net_device
*dev
)
1772 struct fib_result res
;
1773 struct in_device
*in_dev
= __in_dev_get_rcu(dev
);
1774 struct ip_tunnel_info
*tun_info
;
1776 unsigned int flags
= 0;
1780 struct net
*net
= dev_net(dev
);
1783 /* IP on this device is disabled. */
1788 /* Check for the most weird martians, which can be not detected
1792 tun_info
= skb_tunnel_info(skb
);
1793 if (tun_info
&& !(tun_info
->mode
& IP_TUNNEL_INFO_TX
))
1794 fl4
.flowi4_tun_key
.tun_id
= tun_info
->key
.tun_id
;
1796 fl4
.flowi4_tun_key
.tun_id
= 0;
1799 if (ipv4_is_multicast(saddr
) || ipv4_is_lbcast(saddr
))
1800 goto martian_source
;
1804 if (ipv4_is_lbcast(daddr
) || (saddr
== 0 && daddr
== 0))
1807 /* Accept zero addresses only to limited broadcast;
1808 * I even do not know to fix it or not. Waiting for complains :-)
1810 if (ipv4_is_zeronet(saddr
))
1811 goto martian_source
;
1813 if (ipv4_is_zeronet(daddr
))
1814 goto martian_destination
;
1816 /* Following code try to avoid calling IN_DEV_NET_ROUTE_LOCALNET(),
1817 * and call it once if daddr or/and saddr are loopback addresses
1819 if (ipv4_is_loopback(daddr
)) {
1820 if (!IN_DEV_NET_ROUTE_LOCALNET(in_dev
, net
))
1821 goto martian_destination
;
1822 } else if (ipv4_is_loopback(saddr
)) {
1823 if (!IN_DEV_NET_ROUTE_LOCALNET(in_dev
, net
))
1824 goto martian_source
;
1828 * Now we are ready to route packet.
1831 fl4
.flowi4_iif
= l3mdev_fib_oif_rcu(dev
);
1832 fl4
.flowi4_mark
= skb
->mark
;
1833 fl4
.flowi4_tos
= tos
;
1834 fl4
.flowi4_scope
= RT_SCOPE_UNIVERSE
;
1835 fl4
.flowi4_flags
= 0;
1838 err
= fib_lookup(net
, &fl4
, &res
, 0);
1840 if (!IN_DEV_FORWARD(in_dev
))
1841 err
= -EHOSTUNREACH
;
1845 if (res
.type
== RTN_BROADCAST
)
1848 if (res
.type
== RTN_LOCAL
) {
1849 err
= fib_validate_source(skb
, saddr
, daddr
, tos
,
1850 0, dev
, in_dev
, &itag
);
1852 goto martian_source
;
1856 if (!IN_DEV_FORWARD(in_dev
)) {
1857 err
= -EHOSTUNREACH
;
1860 if (res
.type
!= RTN_UNICAST
)
1861 goto martian_destination
;
1863 err
= ip_mkroute_input(skb
, &res
, &fl4
, in_dev
, daddr
, saddr
, tos
);
1867 if (skb
->protocol
!= htons(ETH_P_IP
))
1870 if (!ipv4_is_zeronet(saddr
)) {
1871 err
= fib_validate_source(skb
, saddr
, 0, tos
, 0, dev
,
1874 goto martian_source
;
1876 flags
|= RTCF_BROADCAST
;
1877 res
.type
= RTN_BROADCAST
;
1878 RT_CACHE_STAT_INC(in_brd
);
1884 rth
= rcu_dereference(FIB_RES_NH(res
).nh_rth_input
);
1885 if (rt_cache_valid(rth
)) {
1886 skb_dst_set_noref(skb
, &rth
->dst
);
1894 rth
= rt_dst_alloc(net
->loopback_dev
, flags
| RTCF_LOCAL
, res
.type
,
1895 IN_DEV_CONF_GET(in_dev
, NOPOLICY
), false, do_cache
);
1899 rth
->dst
.output
= ip_rt_bug
;
1900 #ifdef CONFIG_IP_ROUTE_CLASSID
1901 rth
->dst
.tclassid
= itag
;
1903 rth
->rt_is_input
= 1;
1905 rth
->rt_table_id
= res
.table
->tb_id
;
1907 RT_CACHE_STAT_INC(in_slow_tot
);
1908 if (res
.type
== RTN_UNREACHABLE
) {
1909 rth
->dst
.input
= ip_error
;
1910 rth
->dst
.error
= -err
;
1911 rth
->rt_flags
&= ~RTCF_LOCAL
;
1914 if (unlikely(!rt_cache_route(&FIB_RES_NH(res
), rth
))) {
1915 rth
->dst
.flags
|= DST_NOCACHE
;
1916 rt_add_uncached_list(rth
);
1919 skb_dst_set(skb
, &rth
->dst
);
1924 RT_CACHE_STAT_INC(in_no_route
);
1925 res
.type
= RTN_UNREACHABLE
;
1931 * Do not cache martian addresses: they should be logged (RFC1812)
1933 martian_destination
:
1934 RT_CACHE_STAT_INC(in_martian_dst
);
1935 #ifdef CONFIG_IP_ROUTE_VERBOSE
1936 if (IN_DEV_LOG_MARTIANS(in_dev
))
1937 net_warn_ratelimited("martian destination %pI4 from %pI4, dev %s\n",
1938 &daddr
, &saddr
, dev
->name
);
1950 ip_handle_martian_source(dev
, in_dev
, skb
, daddr
, saddr
);
1954 int ip_route_input_noref(struct sk_buff
*skb
, __be32 daddr
, __be32 saddr
,
1955 u8 tos
, struct net_device
*dev
)
1961 /* Multicast recognition logic is moved from route cache to here.
1962 The problem was that too many Ethernet cards have broken/missing
1963 hardware multicast filters :-( As result the host on multicasting
1964 network acquires a lot of useless route cache entries, sort of
1965 SDR messages from all the world. Now we try to get rid of them.
1966 Really, provided software IP multicast filter is organized
1967 reasonably (at least, hashed), it does not result in a slowdown
1968 comparing with route cache reject entries.
1969 Note, that multicast routers are not affected, because
1970 route cache entry is created eventually.
1972 if (ipv4_is_multicast(daddr
)) {
1973 struct in_device
*in_dev
= __in_dev_get_rcu(dev
);
1976 int our
= ip_check_mc_rcu(in_dev
, daddr
, saddr
,
1977 ip_hdr(skb
)->protocol
);
1979 #ifdef CONFIG_IP_MROUTE
1981 (!ipv4_is_local_multicast(daddr
) &&
1982 IN_DEV_MFORWARD(in_dev
))
1985 int res
= ip_route_input_mc(skb
, daddr
, saddr
,
1994 res
= ip_route_input_slow(skb
, daddr
, saddr
, tos
, dev
);
1998 EXPORT_SYMBOL(ip_route_input_noref
);
2000 /* called with rcu_read_lock() */
2001 static struct rtable
*__mkroute_output(const struct fib_result
*res
,
2002 const struct flowi4
*fl4
, int orig_oif
,
2003 struct net_device
*dev_out
,
2006 struct fib_info
*fi
= res
->fi
;
2007 struct fib_nh_exception
*fnhe
;
2008 struct in_device
*in_dev
;
2009 u16 type
= res
->type
;
2013 in_dev
= __in_dev_get_rcu(dev_out
);
2015 return ERR_PTR(-EINVAL
);
2017 if (likely(!IN_DEV_ROUTE_LOCALNET(in_dev
)))
2018 if (ipv4_is_loopback(fl4
->saddr
) && !(dev_out
->flags
& IFF_LOOPBACK
))
2019 return ERR_PTR(-EINVAL
);
2021 if (ipv4_is_lbcast(fl4
->daddr
))
2022 type
= RTN_BROADCAST
;
2023 else if (ipv4_is_multicast(fl4
->daddr
))
2024 type
= RTN_MULTICAST
;
2025 else if (ipv4_is_zeronet(fl4
->daddr
))
2026 return ERR_PTR(-EINVAL
);
2028 if (dev_out
->flags
& IFF_LOOPBACK
)
2029 flags
|= RTCF_LOCAL
;
2032 if (type
== RTN_BROADCAST
) {
2033 flags
|= RTCF_BROADCAST
| RTCF_LOCAL
;
2035 } else if (type
== RTN_MULTICAST
) {
2036 flags
|= RTCF_MULTICAST
| RTCF_LOCAL
;
2037 if (!ip_check_mc_rcu(in_dev
, fl4
->daddr
, fl4
->saddr
,
2039 flags
&= ~RTCF_LOCAL
;
2042 /* If multicast route do not exist use
2043 * default one, but do not gateway in this case.
2046 if (fi
&& res
->prefixlen
< 4)
2051 do_cache
&= fi
!= NULL
;
2053 struct rtable __rcu
**prth
;
2054 struct fib_nh
*nh
= &FIB_RES_NH(*res
);
2056 fnhe
= find_exception(nh
, fl4
->daddr
);
2058 prth
= &fnhe
->fnhe_rth_output
;
2059 rth
= rcu_dereference(*prth
);
2060 if (rth
&& rth
->dst
.expires
&&
2061 time_after(jiffies
, rth
->dst
.expires
)) {
2062 ip_del_fnhe(nh
, fl4
->daddr
);
2069 if (unlikely(fl4
->flowi4_flags
&
2070 FLOWI_FLAG_KNOWN_NH
&&
2072 nh
->nh_scope
== RT_SCOPE_LINK
))) {
2076 prth
= raw_cpu_ptr(nh
->nh_pcpu_rth_output
);
2077 rth
= rcu_dereference(*prth
);
2080 if (rt_cache_valid(rth
)) {
2081 dst_hold(&rth
->dst
);
2087 rth
= rt_dst_alloc(dev_out
, flags
, type
,
2088 IN_DEV_CONF_GET(in_dev
, NOPOLICY
),
2089 IN_DEV_CONF_GET(in_dev
, NOXFRM
),
2092 return ERR_PTR(-ENOBUFS
);
2094 rth
->rt_iif
= orig_oif
? : 0;
2096 rth
->rt_table_id
= res
->table
->tb_id
;
2098 RT_CACHE_STAT_INC(out_slow_tot
);
2100 if (flags
& (RTCF_BROADCAST
| RTCF_MULTICAST
)) {
2101 if (flags
& RTCF_LOCAL
&&
2102 !(dev_out
->flags
& IFF_LOOPBACK
)) {
2103 rth
->dst
.output
= ip_mc_output
;
2104 RT_CACHE_STAT_INC(out_slow_mc
);
2106 #ifdef CONFIG_IP_MROUTE
2107 if (type
== RTN_MULTICAST
) {
2108 if (IN_DEV_MFORWARD(in_dev
) &&
2109 !ipv4_is_local_multicast(fl4
->daddr
)) {
2110 rth
->dst
.input
= ip_mr_input
;
2111 rth
->dst
.output
= ip_mc_output
;
2117 rt_set_nexthop(rth
, fl4
->daddr
, res
, fnhe
, fi
, type
, 0);
2118 if (lwtunnel_output_redirect(rth
->dst
.lwtstate
))
2119 rth
->dst
.output
= lwtunnel_output
;
2125 * Major route resolver routine.
2128 struct rtable
*__ip_route_output_key_hash(struct net
*net
, struct flowi4
*fl4
,
2131 struct net_device
*dev_out
= NULL
;
2132 __u8 tos
= RT_FL_TOS(fl4
);
2133 unsigned int flags
= 0;
2134 struct fib_result res
;
2137 int err
= -ENETUNREACH
;
2143 orig_oif
= fl4
->flowi4_oif
;
2145 fl4
->flowi4_iif
= LOOPBACK_IFINDEX
;
2146 fl4
->flowi4_tos
= tos
& IPTOS_RT_MASK
;
2147 fl4
->flowi4_scope
= ((tos
& RTO_ONLINK
) ?
2148 RT_SCOPE_LINK
: RT_SCOPE_UNIVERSE
);
2152 rth
= ERR_PTR(-EINVAL
);
2153 if (ipv4_is_multicast(fl4
->saddr
) ||
2154 ipv4_is_lbcast(fl4
->saddr
) ||
2155 ipv4_is_zeronet(fl4
->saddr
))
2158 /* I removed check for oif == dev_out->oif here.
2159 It was wrong for two reasons:
2160 1. ip_dev_find(net, saddr) can return wrong iface, if saddr
2161 is assigned to multiple interfaces.
2162 2. Moreover, we are allowed to send packets with saddr
2163 of another iface. --ANK
2166 if (fl4
->flowi4_oif
== 0 &&
2167 (ipv4_is_multicast(fl4
->daddr
) ||
2168 ipv4_is_lbcast(fl4
->daddr
))) {
2169 /* It is equivalent to inet_addr_type(saddr) == RTN_LOCAL */
2170 dev_out
= __ip_dev_find(net
, fl4
->saddr
, false);
2174 /* Special hack: user can direct multicasts
2175 and limited broadcast via necessary interface
2176 without fiddling with IP_MULTICAST_IF or IP_PKTINFO.
2177 This hack is not just for fun, it allows
2178 vic,vat and friends to work.
2179 They bind socket to loopback, set ttl to zero
2180 and expect that it will work.
2181 From the viewpoint of routing cache they are broken,
2182 because we are not allowed to build multicast path
2183 with loopback source addr (look, routing cache
2184 cannot know, that ttl is zero, so that packet
2185 will not leave this host and route is valid).
2186 Luckily, this hack is good workaround.
2189 fl4
->flowi4_oif
= dev_out
->ifindex
;
2193 if (!(fl4
->flowi4_flags
& FLOWI_FLAG_ANYSRC
)) {
2194 /* It is equivalent to inet_addr_type(saddr) == RTN_LOCAL */
2195 if (!__ip_dev_find(net
, fl4
->saddr
, false))
2201 if (fl4
->flowi4_oif
) {
2202 dev_out
= dev_get_by_index_rcu(net
, fl4
->flowi4_oif
);
2203 rth
= ERR_PTR(-ENODEV
);
2207 /* RACE: Check return value of inet_select_addr instead. */
2208 if (!(dev_out
->flags
& IFF_UP
) || !__in_dev_get_rcu(dev_out
)) {
2209 rth
= ERR_PTR(-ENETUNREACH
);
2212 if (ipv4_is_local_multicast(fl4
->daddr
) ||
2213 ipv4_is_lbcast(fl4
->daddr
) ||
2214 fl4
->flowi4_proto
== IPPROTO_IGMP
) {
2216 fl4
->saddr
= inet_select_addr(dev_out
, 0,
2221 if (ipv4_is_multicast(fl4
->daddr
))
2222 fl4
->saddr
= inet_select_addr(dev_out
, 0,
2224 else if (!fl4
->daddr
)
2225 fl4
->saddr
= inet_select_addr(dev_out
, 0,
2229 rth
= l3mdev_get_rtable(dev_out
, fl4
);
2235 fl4
->daddr
= fl4
->saddr
;
2237 fl4
->daddr
= fl4
->saddr
= htonl(INADDR_LOOPBACK
);
2238 dev_out
= net
->loopback_dev
;
2239 fl4
->flowi4_oif
= LOOPBACK_IFINDEX
;
2240 res
.type
= RTN_LOCAL
;
2241 flags
|= RTCF_LOCAL
;
2245 err
= fib_lookup(net
, fl4
, &res
, 0);
2249 if (fl4
->flowi4_oif
&&
2250 !netif_index_is_l3_master(net
, fl4
->flowi4_oif
)) {
2251 /* Apparently, routing tables are wrong. Assume,
2252 that the destination is on link.
2255 Because we are allowed to send to iface
2256 even if it has NO routes and NO assigned
2257 addresses. When oif is specified, routing
2258 tables are looked up with only one purpose:
2259 to catch if destination is gatewayed, rather than
2260 direct. Moreover, if MSG_DONTROUTE is set,
2261 we send packet, ignoring both routing tables
2262 and ifaddr state. --ANK
2265 We could make it even if oif is unknown,
2266 likely IPv6, but we do not.
2269 if (fl4
->saddr
== 0)
2270 fl4
->saddr
= inet_select_addr(dev_out
, 0,
2272 res
.type
= RTN_UNICAST
;
2279 if (res
.type
== RTN_LOCAL
) {
2281 if (res
.fi
->fib_prefsrc
)
2282 fl4
->saddr
= res
.fi
->fib_prefsrc
;
2284 fl4
->saddr
= fl4
->daddr
;
2286 dev_out
= net
->loopback_dev
;
2287 fl4
->flowi4_oif
= dev_out
->ifindex
;
2288 flags
|= RTCF_LOCAL
;
2292 fib_select_path(net
, &res
, fl4
, mp_hash
);
2294 dev_out
= FIB_RES_DEV(res
);
2295 fl4
->flowi4_oif
= dev_out
->ifindex
;
2299 rth
= __mkroute_output(&res
, fl4
, orig_oif
, dev_out
, flags
);
2305 EXPORT_SYMBOL_GPL(__ip_route_output_key_hash
);
2307 static struct dst_entry
*ipv4_blackhole_dst_check(struct dst_entry
*dst
, u32 cookie
)
2312 static unsigned int ipv4_blackhole_mtu(const struct dst_entry
*dst
)
2314 unsigned int mtu
= dst_metric_raw(dst
, RTAX_MTU
);
2316 return mtu
? : dst
->dev
->mtu
;
2319 static void ipv4_rt_blackhole_update_pmtu(struct dst_entry
*dst
, struct sock
*sk
,
2320 struct sk_buff
*skb
, u32 mtu
)
2324 static void ipv4_rt_blackhole_redirect(struct dst_entry
*dst
, struct sock
*sk
,
2325 struct sk_buff
*skb
)
2329 static u32
*ipv4_rt_blackhole_cow_metrics(struct dst_entry
*dst
,
2335 static struct dst_ops ipv4_dst_blackhole_ops
= {
2337 .check
= ipv4_blackhole_dst_check
,
2338 .mtu
= ipv4_blackhole_mtu
,
2339 .default_advmss
= ipv4_default_advmss
,
2340 .update_pmtu
= ipv4_rt_blackhole_update_pmtu
,
2341 .redirect
= ipv4_rt_blackhole_redirect
,
2342 .cow_metrics
= ipv4_rt_blackhole_cow_metrics
,
2343 .neigh_lookup
= ipv4_neigh_lookup
,
2346 struct dst_entry
*ipv4_blackhole_route(struct net
*net
, struct dst_entry
*dst_orig
)
2348 struct rtable
*ort
= (struct rtable
*) dst_orig
;
2351 rt
= dst_alloc(&ipv4_dst_blackhole_ops
, NULL
, 1, DST_OBSOLETE_NONE
, 0);
2353 struct dst_entry
*new = &rt
->dst
;
2356 new->input
= dst_discard
;
2357 new->output
= dst_discard_out
;
2359 new->dev
= ort
->dst
.dev
;
2363 rt
->rt_is_input
= ort
->rt_is_input
;
2364 rt
->rt_iif
= ort
->rt_iif
;
2365 rt
->rt_pmtu
= ort
->rt_pmtu
;
2367 rt
->rt_genid
= rt_genid_ipv4(net
);
2368 rt
->rt_flags
= ort
->rt_flags
;
2369 rt
->rt_type
= ort
->rt_type
;
2370 rt
->rt_gateway
= ort
->rt_gateway
;
2371 rt
->rt_uses_gateway
= ort
->rt_uses_gateway
;
2373 INIT_LIST_HEAD(&rt
->rt_uncached
);
2377 dst_release(dst_orig
);
2379 return rt
? &rt
->dst
: ERR_PTR(-ENOMEM
);
2382 struct rtable
*ip_route_output_flow(struct net
*net
, struct flowi4
*flp4
,
2383 const struct sock
*sk
)
2385 struct rtable
*rt
= __ip_route_output_key(net
, flp4
);
2390 if (flp4
->flowi4_proto
)
2391 rt
= (struct rtable
*)xfrm_lookup_route(net
, &rt
->dst
,
2392 flowi4_to_flowi(flp4
),
2397 EXPORT_SYMBOL_GPL(ip_route_output_flow
);
2399 static int rt_fill_info(struct net
*net
, __be32 dst
, __be32 src
, u32 table_id
,
2400 struct flowi4
*fl4
, struct sk_buff
*skb
, u32 portid
,
2401 u32 seq
, int event
, int nowait
, unsigned int flags
)
2403 struct rtable
*rt
= skb_rtable(skb
);
2405 struct nlmsghdr
*nlh
;
2406 unsigned long expires
= 0;
2408 u32 metrics
[RTAX_MAX
];
2410 nlh
= nlmsg_put(skb
, portid
, seq
, event
, sizeof(*r
), flags
);
2414 r
= nlmsg_data(nlh
);
2415 r
->rtm_family
= AF_INET
;
2416 r
->rtm_dst_len
= 32;
2418 r
->rtm_tos
= fl4
->flowi4_tos
;
2419 r
->rtm_table
= table_id
;
2420 if (nla_put_u32(skb
, RTA_TABLE
, table_id
))
2421 goto nla_put_failure
;
2422 r
->rtm_type
= rt
->rt_type
;
2423 r
->rtm_scope
= RT_SCOPE_UNIVERSE
;
2424 r
->rtm_protocol
= RTPROT_UNSPEC
;
2425 r
->rtm_flags
= (rt
->rt_flags
& ~0xFFFF) | RTM_F_CLONED
;
2426 if (rt
->rt_flags
& RTCF_NOTIFY
)
2427 r
->rtm_flags
|= RTM_F_NOTIFY
;
2428 if (IPCB(skb
)->flags
& IPSKB_DOREDIRECT
)
2429 r
->rtm_flags
|= RTCF_DOREDIRECT
;
2431 if (nla_put_in_addr(skb
, RTA_DST
, dst
))
2432 goto nla_put_failure
;
2434 r
->rtm_src_len
= 32;
2435 if (nla_put_in_addr(skb
, RTA_SRC
, src
))
2436 goto nla_put_failure
;
2439 nla_put_u32(skb
, RTA_OIF
, rt
->dst
.dev
->ifindex
))
2440 goto nla_put_failure
;
2441 #ifdef CONFIG_IP_ROUTE_CLASSID
2442 if (rt
->dst
.tclassid
&&
2443 nla_put_u32(skb
, RTA_FLOW
, rt
->dst
.tclassid
))
2444 goto nla_put_failure
;
2446 if (!rt_is_input_route(rt
) &&
2447 fl4
->saddr
!= src
) {
2448 if (nla_put_in_addr(skb
, RTA_PREFSRC
, fl4
->saddr
))
2449 goto nla_put_failure
;
2451 if (rt
->rt_uses_gateway
&&
2452 nla_put_in_addr(skb
, RTA_GATEWAY
, rt
->rt_gateway
))
2453 goto nla_put_failure
;
2455 expires
= rt
->dst
.expires
;
2457 unsigned long now
= jiffies
;
2459 if (time_before(now
, expires
))
2465 memcpy(metrics
, dst_metrics_ptr(&rt
->dst
), sizeof(metrics
));
2466 if (rt
->rt_pmtu
&& expires
)
2467 metrics
[RTAX_MTU
- 1] = rt
->rt_pmtu
;
2468 if (rtnetlink_put_metrics(skb
, metrics
) < 0)
2469 goto nla_put_failure
;
2471 if (fl4
->flowi4_mark
&&
2472 nla_put_u32(skb
, RTA_MARK
, fl4
->flowi4_mark
))
2473 goto nla_put_failure
;
2475 error
= rt
->dst
.error
;
2477 if (rt_is_input_route(rt
)) {
2478 #ifdef CONFIG_IP_MROUTE
2479 if (ipv4_is_multicast(dst
) && !ipv4_is_local_multicast(dst
) &&
2480 IPV4_DEVCONF_ALL(net
, MC_FORWARDING
)) {
2481 int err
= ipmr_get_route(net
, skb
,
2482 fl4
->saddr
, fl4
->daddr
,
2488 goto nla_put_failure
;
2490 if (err
== -EMSGSIZE
)
2491 goto nla_put_failure
;
2497 if (nla_put_u32(skb
, RTA_IIF
, skb
->dev
->ifindex
))
2498 goto nla_put_failure
;
2501 if (rtnl_put_cacheinfo(skb
, &rt
->dst
, 0, expires
, error
) < 0)
2502 goto nla_put_failure
;
2504 nlmsg_end(skb
, nlh
);
2508 nlmsg_cancel(skb
, nlh
);
2512 static int inet_rtm_getroute(struct sk_buff
*in_skb
, struct nlmsghdr
*nlh
)
2514 struct net
*net
= sock_net(in_skb
->sk
);
2516 struct nlattr
*tb
[RTA_MAX
+1];
2517 struct rtable
*rt
= NULL
;
2524 struct sk_buff
*skb
;
2525 u32 table_id
= RT_TABLE_MAIN
;
2527 err
= nlmsg_parse(nlh
, sizeof(*rtm
), tb
, RTA_MAX
, rtm_ipv4_policy
);
2531 rtm
= nlmsg_data(nlh
);
2533 skb
= alloc_skb(NLMSG_GOODSIZE
, GFP_KERNEL
);
2539 /* Reserve room for dummy headers, this skb can pass
2540 through good chunk of routing engine.
2542 skb_reset_mac_header(skb
);
2543 skb_reset_network_header(skb
);
2545 /* Bugfix: need to give ip_route_input enough of an IP header to not gag. */
2546 ip_hdr(skb
)->protocol
= IPPROTO_ICMP
;
2547 skb_reserve(skb
, MAX_HEADER
+ sizeof(struct iphdr
));
2549 src
= tb
[RTA_SRC
] ? nla_get_in_addr(tb
[RTA_SRC
]) : 0;
2550 dst
= tb
[RTA_DST
] ? nla_get_in_addr(tb
[RTA_DST
]) : 0;
2551 iif
= tb
[RTA_IIF
] ? nla_get_u32(tb
[RTA_IIF
]) : 0;
2552 mark
= tb
[RTA_MARK
] ? nla_get_u32(tb
[RTA_MARK
]) : 0;
2554 memset(&fl4
, 0, sizeof(fl4
));
2557 fl4
.flowi4_tos
= rtm
->rtm_tos
;
2558 fl4
.flowi4_oif
= tb
[RTA_OIF
] ? nla_get_u32(tb
[RTA_OIF
]) : 0;
2559 fl4
.flowi4_mark
= mark
;
2561 if (netif_index_is_l3_master(net
, fl4
.flowi4_oif
))
2562 fl4
.flowi4_flags
= FLOWI_FLAG_L3MDEV_SRC
| FLOWI_FLAG_SKIP_NH_OIF
;
2565 struct net_device
*dev
;
2567 dev
= __dev_get_by_index(net
, iif
);
2573 skb
->protocol
= htons(ETH_P_IP
);
2577 err
= ip_route_input(skb
, dst
, src
, rtm
->rtm_tos
, dev
);
2580 rt
= skb_rtable(skb
);
2581 if (err
== 0 && rt
->dst
.error
)
2582 err
= -rt
->dst
.error
;
2584 rt
= ip_route_output_key(net
, &fl4
);
2594 skb_dst_set(skb
, &rt
->dst
);
2595 if (rtm
->rtm_flags
& RTM_F_NOTIFY
)
2596 rt
->rt_flags
|= RTCF_NOTIFY
;
2598 if (rtm
->rtm_flags
& RTM_F_LOOKUP_TABLE
)
2599 table_id
= rt
->rt_table_id
;
2601 err
= rt_fill_info(net
, dst
, src
, table_id
, &fl4
, skb
,
2602 NETLINK_CB(in_skb
).portid
, nlh
->nlmsg_seq
,
2603 RTM_NEWROUTE
, 0, 0);
2607 err
= rtnl_unicast(skb
, net
, NETLINK_CB(in_skb
).portid
);
2616 void ip_rt_multicast_event(struct in_device
*in_dev
)
2618 rt_cache_flush(dev_net(in_dev
->dev
));
2621 #ifdef CONFIG_SYSCTL
2622 static int ip_rt_gc_interval __read_mostly
= 60 * HZ
;
2623 static int ip_rt_gc_min_interval __read_mostly
= HZ
/ 2;
2624 static int ip_rt_gc_elasticity __read_mostly
= 8;
2626 static int ipv4_sysctl_rtcache_flush(struct ctl_table
*__ctl
, int write
,
2627 void __user
*buffer
,
2628 size_t *lenp
, loff_t
*ppos
)
2630 struct net
*net
= (struct net
*)__ctl
->extra1
;
2633 rt_cache_flush(net
);
2634 fnhe_genid_bump(net
);
2641 static struct ctl_table ipv4_route_table
[] = {
2643 .procname
= "gc_thresh",
2644 .data
= &ipv4_dst_ops
.gc_thresh
,
2645 .maxlen
= sizeof(int),
2647 .proc_handler
= proc_dointvec
,
2650 .procname
= "max_size",
2651 .data
= &ip_rt_max_size
,
2652 .maxlen
= sizeof(int),
2654 .proc_handler
= proc_dointvec
,
2657 /* Deprecated. Use gc_min_interval_ms */
2659 .procname
= "gc_min_interval",
2660 .data
= &ip_rt_gc_min_interval
,
2661 .maxlen
= sizeof(int),
2663 .proc_handler
= proc_dointvec_jiffies
,
2666 .procname
= "gc_min_interval_ms",
2667 .data
= &ip_rt_gc_min_interval
,
2668 .maxlen
= sizeof(int),
2670 .proc_handler
= proc_dointvec_ms_jiffies
,
2673 .procname
= "gc_timeout",
2674 .data
= &ip_rt_gc_timeout
,
2675 .maxlen
= sizeof(int),
2677 .proc_handler
= proc_dointvec_jiffies
,
2680 .procname
= "gc_interval",
2681 .data
= &ip_rt_gc_interval
,
2682 .maxlen
= sizeof(int),
2684 .proc_handler
= proc_dointvec_jiffies
,
2687 .procname
= "redirect_load",
2688 .data
= &ip_rt_redirect_load
,
2689 .maxlen
= sizeof(int),
2691 .proc_handler
= proc_dointvec
,
2694 .procname
= "redirect_number",
2695 .data
= &ip_rt_redirect_number
,
2696 .maxlen
= sizeof(int),
2698 .proc_handler
= proc_dointvec
,
2701 .procname
= "redirect_silence",
2702 .data
= &ip_rt_redirect_silence
,
2703 .maxlen
= sizeof(int),
2705 .proc_handler
= proc_dointvec
,
2708 .procname
= "error_cost",
2709 .data
= &ip_rt_error_cost
,
2710 .maxlen
= sizeof(int),
2712 .proc_handler
= proc_dointvec
,
2715 .procname
= "error_burst",
2716 .data
= &ip_rt_error_burst
,
2717 .maxlen
= sizeof(int),
2719 .proc_handler
= proc_dointvec
,
2722 .procname
= "gc_elasticity",
2723 .data
= &ip_rt_gc_elasticity
,
2724 .maxlen
= sizeof(int),
2726 .proc_handler
= proc_dointvec
,
2729 .procname
= "mtu_expires",
2730 .data
= &ip_rt_mtu_expires
,
2731 .maxlen
= sizeof(int),
2733 .proc_handler
= proc_dointvec_jiffies
,
2736 .procname
= "min_pmtu",
2737 .data
= &ip_rt_min_pmtu
,
2738 .maxlen
= sizeof(int),
2740 .proc_handler
= proc_dointvec
,
2743 .procname
= "min_adv_mss",
2744 .data
= &ip_rt_min_advmss
,
2745 .maxlen
= sizeof(int),
2747 .proc_handler
= proc_dointvec
,
2752 static struct ctl_table ipv4_route_flush_table
[] = {
2754 .procname
= "flush",
2755 .maxlen
= sizeof(int),
2757 .proc_handler
= ipv4_sysctl_rtcache_flush
,
2762 static __net_init
int sysctl_route_net_init(struct net
*net
)
2764 struct ctl_table
*tbl
;
2766 tbl
= ipv4_route_flush_table
;
2767 if (!net_eq(net
, &init_net
)) {
2768 tbl
= kmemdup(tbl
, sizeof(ipv4_route_flush_table
), GFP_KERNEL
);
2772 /* Don't export sysctls to unprivileged users */
2773 if (net
->user_ns
!= &init_user_ns
)
2774 tbl
[0].procname
= NULL
;
2776 tbl
[0].extra1
= net
;
2778 net
->ipv4
.route_hdr
= register_net_sysctl(net
, "net/ipv4/route", tbl
);
2779 if (!net
->ipv4
.route_hdr
)
2784 if (tbl
!= ipv4_route_flush_table
)
2790 static __net_exit
void sysctl_route_net_exit(struct net
*net
)
2792 struct ctl_table
*tbl
;
2794 tbl
= net
->ipv4
.route_hdr
->ctl_table_arg
;
2795 unregister_net_sysctl_table(net
->ipv4
.route_hdr
);
2796 BUG_ON(tbl
== ipv4_route_flush_table
);
2800 static __net_initdata
struct pernet_operations sysctl_route_ops
= {
2801 .init
= sysctl_route_net_init
,
2802 .exit
= sysctl_route_net_exit
,
2806 static __net_init
int rt_genid_init(struct net
*net
)
2808 atomic_set(&net
->ipv4
.rt_genid
, 0);
2809 atomic_set(&net
->fnhe_genid
, 0);
2810 get_random_bytes(&net
->ipv4
.dev_addr_genid
,
2811 sizeof(net
->ipv4
.dev_addr_genid
));
2815 static __net_initdata
struct pernet_operations rt_genid_ops
= {
2816 .init
= rt_genid_init
,
2819 static int __net_init
ipv4_inetpeer_init(struct net
*net
)
2821 struct inet_peer_base
*bp
= kmalloc(sizeof(*bp
), GFP_KERNEL
);
2825 inet_peer_base_init(bp
);
2826 net
->ipv4
.peers
= bp
;
2830 static void __net_exit
ipv4_inetpeer_exit(struct net
*net
)
2832 struct inet_peer_base
*bp
= net
->ipv4
.peers
;
2834 net
->ipv4
.peers
= NULL
;
2835 inetpeer_invalidate_tree(bp
);
2839 static __net_initdata
struct pernet_operations ipv4_inetpeer_ops
= {
2840 .init
= ipv4_inetpeer_init
,
2841 .exit
= ipv4_inetpeer_exit
,
2844 #ifdef CONFIG_IP_ROUTE_CLASSID
2845 struct ip_rt_acct __percpu
*ip_rt_acct __read_mostly
;
2846 #endif /* CONFIG_IP_ROUTE_CLASSID */
2848 int __init
ip_rt_init(void)
2853 ip_idents
= kmalloc(IP_IDENTS_SZ
* sizeof(*ip_idents
), GFP_KERNEL
);
2855 panic("IP: failed to allocate ip_idents\n");
2857 prandom_bytes(ip_idents
, IP_IDENTS_SZ
* sizeof(*ip_idents
));
2859 ip_tstamps
= kcalloc(IP_IDENTS_SZ
, sizeof(*ip_tstamps
), GFP_KERNEL
);
2861 panic("IP: failed to allocate ip_tstamps\n");
2863 for_each_possible_cpu(cpu
) {
2864 struct uncached_list
*ul
= &per_cpu(rt_uncached_list
, cpu
);
2866 INIT_LIST_HEAD(&ul
->head
);
2867 spin_lock_init(&ul
->lock
);
2869 #ifdef CONFIG_IP_ROUTE_CLASSID
2870 ip_rt_acct
= __alloc_percpu(256 * sizeof(struct ip_rt_acct
), __alignof__(struct ip_rt_acct
));
2872 panic("IP: failed to allocate ip_rt_acct\n");
2875 ipv4_dst_ops
.kmem_cachep
=
2876 kmem_cache_create("ip_dst_cache", sizeof(struct rtable
), 0,
2877 SLAB_HWCACHE_ALIGN
|SLAB_PANIC
, NULL
);
2879 ipv4_dst_blackhole_ops
.kmem_cachep
= ipv4_dst_ops
.kmem_cachep
;
2881 if (dst_entries_init(&ipv4_dst_ops
) < 0)
2882 panic("IP: failed to allocate ipv4_dst_ops counter\n");
2884 if (dst_entries_init(&ipv4_dst_blackhole_ops
) < 0)
2885 panic("IP: failed to allocate ipv4_dst_blackhole_ops counter\n");
2887 ipv4_dst_ops
.gc_thresh
= ~0;
2888 ip_rt_max_size
= INT_MAX
;
2893 if (ip_rt_proc_init())
2894 pr_err("Unable to create route proc files\n");
2899 rtnl_register(PF_INET
, RTM_GETROUTE
, inet_rtm_getroute
, NULL
, NULL
);
2901 #ifdef CONFIG_SYSCTL
2902 register_pernet_subsys(&sysctl_route_ops
);
2904 register_pernet_subsys(&rt_genid_ops
);
2905 register_pernet_subsys(&ipv4_inetpeer_ops
);
2909 #ifdef CONFIG_SYSCTL
2911 * We really need to sanitize the damn ipv4 init order, then all
2912 * this nonsense will go away.
2914 void __init
ip_static_sysctl_init(void)
2916 register_net_sysctl(&init_net
, "net/ipv4/route", ipv4_route_table
);